Testing device of magnetic suspension of high-temperature superconductor, and testing method for using the device

A high-temperature superconducting and testing device technology, which is applied in the direction of measuring devices, magnetic properties measurement, and force measurement, can solve problems such as manual movement, difficulty, and inability to test suspension force or guiding force

Inactive Publication Date: 2007-02-21
SOUTHWEST JIAOTONG UNIV
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

The test device can test the vertical force and the guiding force separately and independently, and it is impossible to test the vertical force (suspension force) and the guiding force at the same time; The levitation force or guiding force between the permanent magnet track and the block above it, but the levitation force or guiding force between the block and the magnet above it cannot be tested, so its test application field is limited
During the test, it is driven to the designated position first, and then the test data is collected at one tim

Method used

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  • Testing device of magnetic suspension of high-temperature superconductor, and testing method for using the device
  • Testing device of magnetic suspension of high-temperature superconductor, and testing method for using the device
  • Testing device of magnetic suspension of high-temperature superconductor, and testing method for using the device

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Embodiment 1

[0036] figure 1 , figure 2 A specific embodiment of the present invention is shown.

[0037] A high-temperature superconducting block magnetic levitation performance testing device includes a platform and a moving mechanism on the platform, a bracket on the platform, and a mechanism for hanging samples on the bracket. The platform is an optical platform 1, and the moving mechanism on the optical platform 1 is a plane two-dimensional precision positioning instrument 16 driven by two servo motors controlled by a computer; the support on the platform consists of four non-magnetic upright columns 3 and four The upper part of the column 3 is fixed with a beam plate 8; the lower part of the beam plate 8 is provided with a sliding seat 7 parallel to the platform, and the sliding sleeve holes at the four corners of the sliding seat 7 are fitted on the four columns 3. The screw rod 6 is connected with the seat cover 5 below the sliding seat 7;

[0038] The middle position of the tw...

Embodiment 2

[0061] image 3 Show that the composition of the testing device of this example is basically the same as that of the implementation one, except that the mechanism for hanging the sample installed below the hanging plate 14 consists of: the fixed Dewar container 15 is fixed below the hanging plate 14, and the Dewar container 15 A high-temperature superconducting block is placed inside; a permanent magnet track 18 is arranged on the plane two-dimensional precision positioning instrument 16 . The Dewar vessel 15 can be a large-diameter thin-bottomed low-temperature Dewar vessel, and a fixture is placed inside to hold the high-temperature superconducting block. The permanent magnet track 18 is fixed on the plane two-dimensional precision locator 16 by means of bolts. In order to realize the magnetic levitation performance test of the single or multiple high-temperature superconducting bulk material combination and the permanent magnet track 18.

[0062] When adopting this impleme...

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Abstract

A device used to test magnetic suspension performance of high temperature superconductive block consists of planar two-dimensional accurate positioner, support frame, sliding base, guiding screw, base cover, sliding jacket of guiding screw, guiding force and vertical force transducers, hanging plate, mechanism for hang sample and computer. It is featured as fixing electric cylinder on beam plate, connecting screw to sliding base by passing screw through beam plate in order to let said device detect out relation of vertical force or guiding force to displacement and time as well as magnetic rigidity of vertical force or guiding force.

Description

technical field [0001] The invention relates to the technical field of high-temperature superconducting magnetic levitation testing. Background technique [0002] The research on high-temperature superconducting maglev trains is still in its infancy. Most of the research that has been done is on the high-temperature superconductor block itself and the study on the magnetic levitation force of a single block to improve material performance. For the research on the performance of high-temperature superconducting bulk materials on high-temperature superconducting maglev trains, there are still many problems that have not been studied due to the limitation of experimental research methods. Existing high-temperature superconducting maglev testing, such as the applicant's No. 99117455.0 patent "High-temperature superconducting maglev testing method", is to suspend the superconducting block in the center under the bracket, and pass a Dimensional horizontal locator to place the per...

Claims

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Application Information

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IPC IPC(8): G01R33/00G01R33/12G01L1/00
Inventor 王家素邓昌延曾佑文王素玉黄海于芦逸云
Owner SOUTHWEST JIAOTONG UNIV
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